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Fatigue Life Evaluation of Press-Fitted Specimens by using Multiaxial Fatigue Theory at Contact Edge

机译:采用多轴疲劳理论在接触边缘疲劳寿命评估

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In the shrink or press-fitted shafts such as railway axles, fretting can occur by cyclic stress and micro-slippage due to local movement between shaft and boss. When the fretting occurs in the press-fitted shaft, the fatigue strength remarkably decreases compared with that of without fretting. In this paper fretting fatigue life of press-fitted specimens was evaluated using rnultiaxial fatigue criteria based on critical plane approaches. An elastic-plastic analysis of contact stresses in a press-fitted shaft in contact with a boss was conducted by finite element method and micro-slip due to the bending load was analyzed. The number of cycles of fretting fatigue and the crack orientation were compared with the experimental results obtained by rotating bending tests. It is found that the crack initiation of fretting fatigue between shaft and boss occurs at the contact edge and the normal stress on the critical plane of contact interface was an important parameter for fretting fatigue crack initiation. Furthermore, the results indicated that a critical plane parameter could predict the orientation of crack initiation in the press-fitted shaft.
机译:在诸如铁路车轴的收缩或压配轴中,由于轴和凸台之间的局部运动,可以通过循环应力和微滑动来发生微动。当熔化在压配轴中发生烦恼时,疲劳强度与不烦扰的情况相比显着降低。在本文中,使用基于临界平面方法的RNUltiaxial疲劳标准评估压配样本的疲劳寿命。通过有限元法进行有限元方法,通过有限元方法进行压配轴的接触应力的弹性塑性分析,并分析了由于弯曲负荷引起的微滑。将疲劳疲劳和裂缝取向的循环次数与通过旋转弯曲试验获得的实验结果进行比较。结果发现,在接触边缘处发生轴和老板之间的微齿疲劳的裂缝启动,并且接触界面的关键平面上的正常应力是用于疲劳疲劳裂纹引发的重要参数。此外,结果表明,关键平面参数可以预测压配轴裂纹起始的取向。

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